Sloshing 是在部分充满的集装箱内的一种液体运动。在太空船和另外的部分充满的动人的集装箱, sloshing 起一个重要作用。在液体和稳固的边界之间的接触线在运动期间影响液体运动和 sloshing。为稳定的液体流动与的一个物理模型一部分滑倒边界被介绍,为这个模型的方程被导出为圆柱(塑造试管) 坦克。这给被使用技术和图形的结果被显示出的连续在松驰上(SOR ) 数字地解决的微分方程的一个非线性的系统。在稳定的液体流动的变化在 slip 长度与变化被观察,一些有用结果被导出。在一个毛状的试管的液体层的显微镜的半径上的效果也通过图形的结果被显示出。
Sloshing is a kind of fluid motion inside partially filled containers. In spacecraft and other partially filled moving containers, sloshing plays an important role. The contact line between the fluid and solid boundary affects the fluid movement and sloshing during motion. A physical model for steady fluid flow with a partial slip boundary is presented and equations for this model are derived for cylindrical (tube-shaped) tanks. This gives a nonlinear system of differential equations that is solved numerically by using a Successive Over-Relaxation (SOR) technique and graphical results are shown. Variations in steady fluid flow are ob- served with changes in the slip length and some useful results are derived. The effects on the microscopic radius of the fluid layer in a capillary tube are also shown through graphical results.